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首页> 外文期刊>Circulation. Arrhythmia and electrophysiology >Identification and acute targeting of gaps in atrial ablation lesion sets using a real-time magnetic resonance imaging system
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Identification and acute targeting of gaps in atrial ablation lesion sets using a real-time magnetic resonance imaging system

机译:使用实时磁共振成像系统识别和急性靶向消融消融灶中的间隙

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Background: Radiofrequency ablation is routinely used to treat cardiac arrhythmias, but gaps remain in ablation lesion sets because there is no direct visualization of ablation-related changes. In this study, we acutely identify and target gaps using a real-time magnetic resonance imaging (RT-MRI) system, leading to a complete and transmural ablation in the atrium. Methods and Results: A swine model was used for these studies (n=12). Ablation lesions with a gap were created in the atrium using fluoroscopy and an electroanatomic system in the first group (n=5). The animal was then moved to a 3-tesla MRI system where high-resolution late gadolinium enhancement MRI was used to identify the gap. Using an RT-MRI catheter navigation and visualization system, the gap area was ablated in the MR scanner. In a second group (n=7), ablation lesions with varying gaps in between were created under RT-MRI guidance, and gap lengths determined using late gadolinium enhancement MR images were correlated with gap length measured from gross pathology. Gaps up to 1.0 mm were identified using gross pathology, and gaps up to 1.4 mm were identified using late gadolinium enhancement MRI. Using an RT-MRI system with active catheter navigation gaps can be targeted acutely, leading to lesion sets with no gaps. The correlation coefficient (R2) between the gap length was identified using MRI, and the gross pathology was 0.95. Conclusions: RT-MRI system can be used to identify and acutely target gaps in atrial ablation lesion sets. Acute targeting of gaps in ablation lesion sets can potentially lead to significant improvement in clinical outcomes.
机译:背景:射频消融通常用于治疗心律不齐,但是由于没有直接观察到消融相关变化的原因,消融病灶中仍存在间隙。在这项研究中,我们使用实时磁共振成像(RT-MRI)系统敏锐地识别和确定间隙,从而导致心房内彻底的透壁消融。方法和结果:猪模型用于这些研究(n = 12)。在第一组中,使用荧光检查和电解剖系统在心房中产生了带有间隙的消融灶(n = 5)。然后将动物转移到3-tesla MRI系统中,其中使用高分辨率晚期used增强MRI来识别间隙。使用RT-MRI导管导航和可视化系统,在MR扫描仪中消融了间隙区域。在第二组(n = 7)中,在RT-MRI引导下创建了间隙变化不一的消融灶,使用晚期g增强MR图像确定的间隙长度与从总体病理学测量的间隙长度相关。使用总体病理学可以识别出最大1.0毫米的间隙,而使用晚期late增强MRI可以识别出最大1.4毫米的间隙。使用具有主动导管导航间隙的RT-MRI系统可以迅速确定目标,从而导致无间隙的病变组。使用MRI鉴定间隙长度之间的相关系数(R2),总病理率为0.95。结论:RT-MRI系统可用于识别并急性靶向房消融病变部位的间隙。消融病灶间隙的急性靶向可能会导致临床结果的显着改善。

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